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CFD analyses of coolant channel flowfields

机译:冷却液通道流场的CFD分析

摘要

The flowfield characteristics in rocket engine coolant channels are analyzed by means of a numerical model. The channels are characterized by large length to diameter ratios, high Reynolds numbers, and asymmetrical heating. At representative flow conditions, the channel length is approximately twice the hydraulic entrance length so that fully developed conditions would be reached for a constant property fluid. For the supercritical hydrogen that is used as the coolant, the strong property variations create significant secondary flows in the cross-plane which have a major influence on the flow and the resulting heat transfer. Comparison of constant and variable property solutions show substantial differences. In addition, the property variations prevent fully developed flow. The density variation accelerates the fluid in the channels increasing the pressure drop without an accompanying increase in heat flux. Analyses of the inlet configuration suggest that side entry from a manifold can affect the development of the velocity profile because of vortices generated as the flow enters the channel. Current work is focused on studying the effects of channel bifurcation on the flow field and the heat transfer characteristics.
机译:通过数值模型分析了火箭发动机冷却剂通道中的流场特性。通道的特点是长径比大,雷诺数高和加热不对称。在代表性的流动条件下,通道长度约为液压入口长度的两倍,因此对于恒定特性的流体,将达到充分发展的条件。对于用作冷却剂的超临界氢,强烈的性能变化会在横断面上产生大量的二次流动,这会对流动和产生的热传递产生重大影响。不变和可变性质解决方案的比较显示出很大的差异。另外,性质变化会阻止充分发展的流动。密度变化会加速通道中的流体,从而增加压降,而不会导致热通量的增加。入口构造的分析表明,由于流进入通道时产生的涡流,歧管的侧面进入会影响速度曲线的发展。当前的工作集中在研究通道分叉对流场和传热特性的影响。

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